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雌激素受体α和β对大鼠血管加压素基因表达的差异转录调控

Differential transcriptional regulation of rat vasopressin gene expression by estrogen receptor alpha and beta.

作者信息

Shapiro R A, Xu C, Dorsa D M

机构信息

Department of Psychiatry and Behavioral Sciences, University of Washington, Seattle 98195, USA.

出版信息

Endocrinology. 2000 Nov;141(11):4056-64. doi: 10.1210/endo.141.11.7796.

Abstract

Neuronal expression of vasopressin messenger RNA (mRNA) and peptide has been shown to be estrogen dependent. A 5.5-kb genomic DNA fragment, 5' of the AVP coding region, was used in luciferase reporter assays to measure transcriptional activation by either estrogen receptor alpha or beta in response to various treatments. ER alpha and ER beta displayed differential regulation of the AVP promoter. SK-N-SH cells transfected with ER alpha exhibited increased luciferase activity in response to estrogen, and the selective estrogen receptor modulators (SERMs), Tamoxifen, and ICI 182,780. Cells transfected with ER beta exhibited a high constitutive activity, which is unchanged by exposure to SERMs but can be inhibited by estrogen. Deletion of 1.5 kb from the 5' end or mutation of a single estrogen response element (ERE)-like sequence resulted in loss of estrogen-dependent induction by ER alpha and increased the ability of estrogen to inhibit the high constitutive activity of ER beta. The distal ERE-containing 1.5-kb fragment, when coupled to luciferase, is able to support both ER alpha and ER beta mediated activation of transcription by estrogen. These results suggest that a single ERE in the distal 1.5-kb portion of the 5.5-kb fragment contains the primary positive estrogen responsive sequences for ER alpha and ER beta. The data also suggest that sequences proximal to this element serve to inhibit transcription mediated by ER beta.

摘要

血管加压素信使核糖核酸(mRNA)和肽的神经元表达已被证明依赖于雌激素。在荧光素酶报告基因检测中,使用了位于抗利尿激素(AVP)编码区5'端的一个5.5 kb基因组DNA片段,以测量雌激素受体α或β在各种处理下的转录激活情况。雌激素受体α和β对AVP启动子表现出不同的调控。用雌激素受体α转染的SK-N-SH细胞在雌激素、选择性雌激素受体调节剂(SERM)他莫昔芬和ICI 182,780作用下,荧光素酶活性增加。用雌激素受体β转染的细胞表现出高组成活性,暴露于SERM时该活性不变,但可被雌激素抑制。从5'端缺失1.5 kb或单个雌激素反应元件(ERE)样序列发生突变,导致雌激素受体α对雌激素依赖性诱导的丧失,并增加了雌激素抑制雌激素受体β高组成活性的能力。当与荧光素酶偶联时,含远端ERE的1.5 kb片段能够支持雌激素受体α和β介导的雌激素转录激活。这些结果表明,在5.5 kb片段远端1.5 kb部分的单个ERE包含雌激素受体α和β的主要阳性雌激素反应序列。数据还表明,该元件近端的序列可抑制雌激素受体β介导的转录。

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